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Investigation of Hole Size Formation by Steel Sphere Impacting on Thin Plate at Hypervelocity

机译:钢球体孔尺寸形成对薄板在超细层薄板上的形成

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Protective structures against hypervelocity impact of fragments consists of a thin skin (bumper plate) followed by air gap and main structure. The bumper causes shattering of the fragment and reduces fragment penetration capability to the main structure. Hole size formed in the bumper plate is indicative of damage extent to the main structure and is a direct measure of exposure to new impacts. An extensive study for characterization of hole size in thin aluminium plates due to hypervelocity impacts of aluminium projectiles has been reported in literature. An empirical equation is generally used to estimate the hole size which depends on non-dimensional parameters relating the target and projectile geometry, material and impact conditions, and constants of the equation needs to be determined for a given problem. The authors have investigated the hole size formation for steel sphere impacting thin steel target with velocity ranging from 2 km/s to 4 km/s and obliquity between 0° and 70°. The constants for a prototype non-dimensional empirical equation for hole size have been determined using hydro-code simulation and a few experiments have been conducted to validate the predictions.
机译:防止碎片的超细兴奋撞击的保护结构包括薄的皮肤(防撞板),然后是气隙和主结构。保险杠会导致碎片破碎并将片段穿透能力降低到主要结构。在保险杠板中形成的孔尺寸指示对主要结构的损坏程度,并且是暴露于新影响的直接测量。文献报道了由于铝射弹的超胶质型薄铝板中薄铝板中孔尺寸的广泛研究。经验方程通常用于估计孔尺寸,这取决于有关目标和射弹几何形状,材料和冲击条件的非尺寸参数,并且需要针对给定的问题确定等式的常数。作者已经研究了钢球体撞击薄钢靶的孔尺寸形成,速度范围为2 km / s至4km / s,倾斜在0°和70°之间。已经使用水电码模拟确定了用于孔尺寸的原型非尺寸经验方程的常数,并且已经进行了一些实验以验证预测。

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